Fuentes-Cabrera Miguel, Sumpter Bobby G, Wells Jack C
Computer Science and Mathematics Division, Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, TN 37831-6164, USA.
J Phys Chem B. 2005 Nov 10;109(44):21135-9. doi: 10.1021/jp055210i.
The size-expanded DNA bases, xA, xC, xG, and xT, are benzo-homologue forms of the natural DNA bases; i.e., their structure can be seen as the fusion of a natural base and a benzene ring. Recently, a variety of DNAs, known as xDNAs, have been synthesized in which size-expanded and natural bases are paired. In this paper we use second-order Møller-Plesset perturbation theory and density functional theory to investigate the structural and electronic properties of xA, xC, xG, and xT and their natural counterparts. We find that whereas natural and size-expanded bases have both nonplanar amino groups the latter have also nonplanar aromatic rings. When density functional theory is used to investigate the electronic properties of size-expanded and natural bases, it is found that the HOMO-LUMO gap of the size-expanded bases is smaller than that of the natural bases. Also, xG should be easier to oxidize than G.
尺寸扩展的DNA碱基xA、xC、xG和xT是天然DNA碱基的苯并同系物形式;也就是说,它们的结构可视为一个天然碱基与一个苯环的融合。最近,已经合成了多种被称为xDNA的DNA,其中尺寸扩展碱基与天然碱基配对。在本文中,我们使用二阶莫勒-普列斯特定则微扰理论和密度泛函理论来研究xA、xC、xG和xT及其天然对应物的结构和电子性质。我们发现,虽然天然碱基和尺寸扩展碱基都有非平面氨基,但后者还有非平面芳香环。当使用密度泛函理论研究尺寸扩展碱基和天然碱基的电子性质时,发现尺寸扩展碱基的最高占据分子轨道-最低未占据分子轨道能隙比天然碱基的小。此外,xG应该比G更容易被氧化。